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« Previous: Appendix C: Prominent Journals with Articles by NCNR Researchers
Suggested Citation:"Appendix D: Citations of Papers by NCNR Researchers." National Academies of Sciences, Engineering, and Medicine. 2022. An Assessment of the Center for Neutron Research at the National Institute of Standards and Technology: Fiscal Year 2021. Washington, DC: The National Academies Press. doi: 10.17226/26418.
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D

Citations of Papers by NCNR Researchers

2020

Materials for Hydrogen-Based Energy Storage—Past, Recent Progress, and Future Outlook

Hirscher, M., V.A. Yartys, M. Baricco, J. Bellosta von Colbe, D. Blanchard, R.C. Bowman Jr., D.P. Broom, et al., Journal of Alloys and Compounds, 827:153548.

  • Citations = 185

Balancing Volumetric and Gravimetric Uptake in Highly Porous Materials for Clean Energy

Chen, Z., P. Li, R. Anderson, X. Wang, X. Zhang, L. Robison, L.R. Redfern, et al., Science, 368(6488):297.

  • Citations = 132

Microporous Metal-Organic Framework Materials for Gas Separation

Lin, R.-B., S. Xiang, W. Zhou, and B. Chen, Chem, 6(2):337.

  • Citations = 111

Mixed Metal-Organic Framework with Multiple Binding Sites for Efficient C2H2/CO2 Separation

J. Gao, X. Qian, R.-B. Lin, R. Krishna, H. Wu, W. Zhou, and B. Chen, Angewandte Chemie—International Edition, 59(11):4396.

  • Citations = 100

Enhanced Photocatalytic Hydrogen Evolution from Organic Semiconductor Heterojunction Nanoparticles

Kosco, J., M. Bidwell, H. Cha, T. Martin, C.T. Howells, M. Sachs, D.H. Anjum, et al., Nature Materials, 19(5):559.

  • Citations = 83

Efficient and Tunable One-Dimensional Charge Transport in Layered Lanthanide Metal-Organic Frameworks

Skorupskii, G., B.A. Trump, T.W. Kasel, C.M. Brown, C.H. Hendon, and M. Dincă, Nature Chemistry, 12(2):131.

  • Citations = 78

Selective Ethane/Ethylene Separation in a Robust Microporous Hydrogen-Bonded Organic Framework

Zhang, X., L. Li, J.-X. Wang, H.-M. Wen, R. Krishna, H. Wu, W. Zhou, et al., Journal of the American Chemical Society, 142(1):633.

  • Citations = 40
Suggested Citation:"Appendix D: Citations of Papers by NCNR Researchers." National Academies of Sciences, Engineering, and Medicine. 2022. An Assessment of the Center for Neutron Research at the National Institute of Standards and Technology: Fiscal Year 2021. Washington, DC: The National Academies Press. doi: 10.17226/26418.
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Point Defects, Compositional Fluctuations, and Secondary Phases in Non-Stoichiometric Kesterites

Schorr, S., G. Gurieva, M. Guc, M. Dimitrievska, A. Pérez-Rodríguez, V. Izquierdo-Roca, C.S. Schnohr, et al., Journal of Physics: Energy, 2(1):012002.

  • Citations = 38

Engineering Microporous Ethane-Trapping Metal-Organic Frameworks for Boosting Ethane/Ethylene Separation

Pei, J., J.-X. Wang, K. Shao, Y. Yang, Y. Cui, H. Wu, W. Zhou, et al., Journal of Materials Chemistry A, 8(7):3613.

  • Citations = 30

2019

High Electronic Conductivity as the Origin of Lithium Dendrite Formation Within Solid Electrolytes

Han, F., A.S. Westover, J. Yue, X. Fan, F. Wang, M. Chi, D.N. Leonard, et al., Nature Energy, 4:187.

  • Citations = 473

Exploration of Porous Metal-Organic Frameworks for Gas Separation and Purification

Lin, R.-B., S. Xiang, H. Xing, W. Zhou, and B. Chen, Coordination Chemistry Reviews, 378:87.

  • Citations = 299

Multifunctional Porous Hydrogen-Bonded Organic Framework Materials

Lin, R.-B., Y. He, P. Li, H. Wang, W. Zhou, and B. Chen, Chemical Society Reviews, 48(5):1362.

  • Citations = 242

Nearly Ferromagnetic Spin-Triplet Superconductivity

Ran, S., C. Eckberg, Q.-P. Ding, Y. Furukawa, T. Metz, S.R. Saha, I.L. Liu, et al., Science, 365(6454):684.

  • Citations = 167

Influences from Solvents on Charge Storage in Titanium Carbide MXenes

Wang, X., T.S. Mathis, K. Li, Z. Lin, L. Vlcek, T. Torita, N.C. Osti, et al., Nature Energy, 4:241.

  • Citations = 160

Tunable Titanium Metal-Organic Frameworks with Infinite 1D Ti-O Rods for Efficient Visible-Light-Driven Photocatalytic H2 Evolution

Li, C., H. Xu, J. Gao, W. Du, L. Shangguan, X. Zhang, R.- B. Lin, et al., Journal of Materials Chemistry A, 7(19):11928.

  • Citations = 131

Pore Space Partition Within a Metal-Organic Framework for Highly Efficient C2H2/CO2 Separation

Ye, Y., Z. Ma, R.-B. Lin, R. Krishna, W. Zhou, Q. Lin, Z. Zhang, et al., Journal of the American Chemical Society, 141(9):4130.

  • Citations = 127
Suggested Citation:"Appendix D: Citations of Papers by NCNR Researchers." National Academies of Sciences, Engineering, and Medicine. 2022. An Assessment of the Center for Neutron Research at the National Institute of Standards and Technology: Fiscal Year 2021. Washington, DC: The National Academies Press. doi: 10.17226/26418.
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Cellulose Ionic Conductors with High Differential Thermal Voltage for Low-Grade Heat Harvesting

Li, T., X. Zhang, S.D. Lacey, R. Mi, X. Zhao, F. Jiang, J. Song, et al., Nature Materials, 18:608.

  • Citations = 105

Enhanced Gas Uptake in a Microporous Metal-Organic Framework via a Sorbate Induced-Fit Mechanism

Yu, M.-H., B. Space, D. Franz, W. Zhou, C. He, L. Li, R. Krishna, et al., Journal of the American Chemical Society, 141(44):17703.

  • Citations = 56

2018

Highly Reversible Zinc Metal Anode for Aqueous Batteries

Wang, F., O. Borodin, T. Gao, X. Fan, W. Sun, F. Han, A. Faraone, et al., Nature Materials, 17(6):543.

  • Citations = 701

Ethane/Ethylene Separation in a Metal-Organic Framework with Iron-Peroxo Sites

Li, L., R.-B. Lin, R. Krishna, H. Li, S. Xiang, H. Wu, J. Li, et al., Science, 362:443.

  • Citations = 332

Molecular Sieving of Ethylene from Ethane Using a Rigid Metal-Organic Framework

Lin, R.-B., L. Li, H.-L. Zhou, H. Wu, C. He, S. Li, R. Krishna, et al., Nature Materials, 17:1128.

  • Citations = 240

Porous Metal-Organic Frameworks for Fuel Storage

He, Y., F. Chen, B. Li, G. Qian, W. Zhou, and B. Chen, Coordination Chemistry Reviews, 373:167.

  • Citations = 147

Beyond Catalysis and Membranes: Visualizing and Solving the Challenge of Electrode Water Accumulation and Flooding in AEMFCs

Omasta, T.J., A.M. Park, J.M. LaManna, Y. Zhang, X. Peng, L. Wang, D.L. Jacobson, et al., Energy and Environmental Science, 11(3):551.

  • Citations = 145

Topological Spin Excitations in Honeycomb Ferromagnet CrI3

Chen, L., J.-H. Chung, B. Gao, T. Chen, M.B. Stone, A.I. Kolesnikov, Q. Huang, and P. Dai, Physical Review X, 8(4):041028.

  • Citations = 141

Boosting Ethane/Ethylene Separation Within Isoreticular Ultramicroporous Metal-Organic Frameworks

Lin, R.-B., H. Wu, L. Li, X.-L. Tang, Z. Li, J. Gao, H. Cui, et al., Journal of the American Chemical Society, 140(40):12940.

  • Citations = 138
Suggested Citation:"Appendix D: Citations of Papers by NCNR Researchers." National Academies of Sciences, Engineering, and Medicine. 2022. An Assessment of the Center for Neutron Research at the National Institute of Standards and Technology: Fiscal Year 2021. Washington, DC: The National Academies Press. doi: 10.17226/26418.
×
Page 61
Suggested Citation:"Appendix D: Citations of Papers by NCNR Researchers." National Academies of Sciences, Engineering, and Medicine. 2022. An Assessment of the Center for Neutron Research at the National Institute of Standards and Technology: Fiscal Year 2021. Washington, DC: The National Academies Press. doi: 10.17226/26418.
×
Page 62
Suggested Citation:"Appendix D: Citations of Papers by NCNR Researchers." National Academies of Sciences, Engineering, and Medicine. 2022. An Assessment of the Center for Neutron Research at the National Institute of Standards and Technology: Fiscal Year 2021. Washington, DC: The National Academies Press. doi: 10.17226/26418.
×
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At the request of the National Institute of Standards and Technology (NIST), the National Academies of Sciences, Engineering, and Medicine has, since 1959, annually assembled panels of experts from academia, industry, medicine, and other scientific and engineering communities to assess the quality and effectiveness of the NIST measurements and standards laboratories. The NIST Center for Neutron Research (NCNR) is one of six major research organizational units consisting of five laboratories and one user facility at NIST. It is one of only three neutron scattering user facilities in the United States, with 30 instruments, supporting roughly one-third of the U.S. neutron scattering instruments and users. This report assesses the scientific and technical work performed by the NCNR, as well as the portfolio of scientific expertise within the organization and dissemination of program outputs.

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